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An investigation into the railway ballast grading using GPR and image analysis

机译:基于探地雷达的铁路道碴分级及图像分析研究

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摘要

This study reports on an investigation into the grain size distribution of the railway ballast using ground-penetrating radar (GPR) and image analysis. The proposed approach relies on the hypothesis that the dimension (grading) of the ballast aggregates can influence the back-reflected spectrum received by the use of GPR. This assumption was confirmed by the finite difference time-domain (FDTD) simulations of the GPR signal, which were run by using the numerical simulator package gprMax 2D. A regression model was developed which related the "equivalent" diameter of the ballast aggregates and the frequency of the peak within the received spectrum. The model was validated in the laboratory environment by means of a 155 cm x 155 cm x 50 cm methacrylate tank, filled up with railway ballast. An air-coupled GPR system equipped with a 2000 MHz central frequency antenna was used for testing purposes. A total of three spatial distributions of the ballast aggregates within the tank were investigated, by emptying out and filling up thrice the tank with the same material. The geometric information on the ballast grading obtained from the simulation-based regression model was compared to the actual grading curve of the ballast. To this effect, an algorithm based on the automatic image analysis was developed. The comparison showed that the modelled aggregate diameter corresponded to the 70 % of the grading of the material sieved out in the laboratory. This contribution paves the way to new methodologies for the non-destructive assessment and the monitoring of segregation phenomena within the railway ballast layers in railway track-beds.
机译:这项研究报告了使用探地雷达(GPR)和图像分析对铁路道ast的粒度分布进行调查的结果。所提出的方法基于这样的假设,即道aggregate骨料的尺寸(等级)会影响通过使用GPR接收的背反射光谱。通过使用数值模拟器软件包gprMax 2D运行的GPR信号的时差有限时域(FDTD)模拟,证实了这一假设。建立了回归模型,该模型将镇流器骨料的“等效”直径与接收光谱内峰的频率相关。该模型在实验室环境中通过装满铁路道ast的155 cm x 155 cm x 50 cm甲基丙烯酸酯罐进行了验证。配备2000 MHz中心频率天线的空气耦合GPR系统用于测试目的。通过清空并用相同的材​​料填充三次,研究了罐内压载骨料的三个空间分布。从基于模拟的回归模型获得的关于镇流器分级的几何信息与镇流器的实际分级曲线进行了比较。为此,开发了一种基于自动图像分析的算法。比较表明,建模的集料直径对应于在实验室筛分的物料等级的70%。这一贡献为采用新的方法进行无损评估和监测铁路道岔道ball中的偏析现象铺平了道路。

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